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对水稻发育花粉和萌发花粉中基因表达谱的全基因组分析和比较。

Genome-scale analysis and comparison of gene expression profiles in developing and germinated pollen in Oryza sativa.

机构信息

Research Center of Molecular and Developmental Biology, Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, China.

出版信息

BMC Genomics. 2010 May 28;11:338. doi: 10.1186/1471-2164-11-338.

Abstract

BACKGROUND

Pollen development from the microspore involves a series of coordinated cellular events, and the resulting mature pollen has a specialized function to quickly germinate, produce a polar-growth pollen tube derived from the vegetative cell, and deliver two sperm cells into the embryo sac for double fertilization. The gene expression profiles of developing and germinated pollen have been characterised by use of the eudicot model plant Arabidopsis. Rice, one of the most important cereal crops, has been used as an excellent monocot model. A comprehensive analysis of transcriptome profiles of developing and germinated pollen in rice is important to understand the conserved and diverse mechanism underlying pollen development and germination in eudicots and monocots.

RESULTS

We used Affymetrix GeneChip Rice Genome Array to comprehensively analyzed the dynamic changes in the transcriptomes of rice pollen at five sequential developmental stages from microspores to germinated pollen. Among the 51,279 transcripts on the array, we found 25,062 pollen-preferential transcripts, among which 2,203 were development stage-enriched. The diversity of transcripts decreased greatly from microspores to mature and germinated pollen, whereas the number of stage-enriched transcripts displayed a "U-type" change, with the lowest at the bicellular pollen stage; and a transition of overrepresented stage-enriched transcript groups associated with different functional categories, which indicates a shift in gene expression program at the bicellular pollen stage. About 54% of the now-annotated rice F-box protein genes were expressed preferentially in pollen. The transcriptome profile of germinated pollen was significantly and positively correlated with that of mature pollen. Analysis of expression profiles and coexpressed features of the pollen-preferential transcripts related to cell cycle, transcription, the ubiquitin/26S proteasome system, phytohormone signalling, the kinase system and defense/stress response revealed five expression patterns, which are compatible with changes in major cellular events during pollen development and germination. A comparison of pollen transcriptomes between rice and Arabidopsis revealed that 56.6% of the rice pollen preferential genes had homologs in Arabidopsis genome, but 63.4% of these homologs were expressed, with a small proportion being expressed preferentially, in Arabidopsis pollen. Rice and Arabidopsis pollen had non-conservative transcription factors each.

CONCLUSIONS

Our results demonstrated that rice pollen expressed a set of reduced but specific transcripts in comparison with vegetative tissues, and the number of stage-enriched transcripts displayed a "U-type" change during pollen development, with the lowest at the bicellular pollen stage. These features are conserved in rice and Arabidopsis. The shift in gene expression program at the bicellular pollen stage may be important to the transition from earlier cell division to later pollen maturity. Pollen at maturity pre-synthesized transcripts needed for germination and early pollen tube growth. The transcription regulation associated with pollen development would have divergence between the two species. Our results also provide novel insights into the molecular program and key components of the regulatory network regulating pollen development and germination.

摘要

背景

花粉从花粉母细胞发育涉及一系列协调的细胞事件,成熟花粉具有快速萌发、产生来源于营养细胞的极性生长花粉管以及将两个精子细胞输送到胚囊中进行双受精的特殊功能。已利用拟南芥这种真双子叶模式植物对发育和萌发花粉的基因表达谱进行了描述。水稻是最重要的谷类作物之一,已被用作优良的单子叶模式植物。对水稻发育和萌发花粉的转录组谱进行全面分析,对于理解真双子叶植物和单子叶植物花粉发育和萌发所涉及的保守和多样化机制非常重要。

结果

我们使用 Affymetrix GeneChip Rice Genome Array 综合分析了从小孢子到萌发花粉的五个连续发育阶段的水稻花粉的转录组动态变化。在芯片上的 51279 个转录本中,我们发现了 25062 个花粉偏好转录本,其中 2203 个是发育阶段特异富集的。从小孢子到成熟和萌发花粉,转录本的多样性大大降低,而阶段特异富集转录本的数量呈“U 型”变化,在二细胞花粉阶段最低;与不同功能类别相关的阶段特异富集转录本组的代表发生转变,这表明二细胞花粉阶段基因表达程序发生了转变。约 54%现已注释的水稻 F-box 蛋白基因在花粉中优先表达。萌发花粉的转录组谱与成熟花粉的转录组谱呈显著正相关。与细胞周期、转录、泛素/26S 蛋白酶体系统、植物激素信号转导、激酶系统和防御/应激反应相关的花粉偏好转录本的表达谱分析揭示了五种表达模式,这与花粉发育和萌发过程中的主要细胞事件的变化相吻合。水稻和拟南芥花粉转录组的比较表明,水稻花粉中 56.6%的偏好基因在拟南芥基因组中有同源基因,但其中 63.4%的同源基因表达,而这些基因中有小部分在拟南芥花粉中优先表达。水稻和拟南芥花粉都有非保守的转录因子。

结论

与营养组织相比,我们的结果表明水稻花粉表达了一组减少但特异的转录本,并且在花粉发育过程中阶段特异富集转录本的数量呈“U 型”变化,在二细胞花粉阶段最低。这些特征在水稻和拟南芥中是保守的。二细胞花粉阶段基因表达程序的转变可能对从早期细胞分裂到后期花粉成熟的转变很重要。成熟花粉预先合成了萌发和早期花粉管生长所需的转录本。两个物种之间的花粉发育相关转录调控可能存在差异。我们的结果还为调控花粉发育和萌发的调控网络的分子程序和关键组成部分提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b4e/2895629/a1571b34f5c1/1471-2164-11-338-1.jpg

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